Physical Review Research (Mar 2022)

Zeeman slowing of a group-III atom

  • Xianquan Yu,
  • Jinchao Mo,
  • Tiangao Lu,
  • Ting You Tan,
  • Travis L. Nicholson

DOI
https://doi.org/10.1103/PhysRevResearch.4.013238
Journal volume & issue
Vol. 4, no. 1
p. 013238

Abstract

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We realize a Zeeman slower of an atom in main group III of the Periodic Table, otherwise known as the “triel elements.” Despite the fact that our atom of choice (namely indium) does not have a ground state cycling transition suitable for laser cooling, slowing is achieved by driving the transition |5P_{3/2},F=6〉→|5D_{5/2},F=7〉, where the lower-energy state is metastable. Using a slower based on permanent magnets in a transverse-field configuration, we observe a bright slowed atomic beam at our design goal velocity of 70 m/s. The techniques presented here can straightforwardly extend to other triel atoms such as thallium, aluminum, and gallium. Furthermore, this work opens the possibility of cooling group-III atoms to ultracold temperatures.